Journalartikel

A versatile triple radiofrequency quadrupole system for cooling, mass separation and bunching of exotic nuclei


AutorenlisteHaettner, Emma; Plass, Wolfgang R.; Czok, Ulrich; Dickel, Timo; Geissel, Hans; Kinsel, Wadim; Petrick, Martin; Schaefer, Thorsten; Scheidenberger, Christoph

Jahr der Veröffentlichung2018

Seiten138-151

ZeitschriftNuclear Instruments and Methods in Physics Research. Section A: Accelerators, Spectrometers, Detectors and Associated Equipment

Bandnummer880

ISSN0168-9002

eISSN1872-9576

DOI Linkhttps://doi.org/10.1016/j.nima.2017.10.003

VerlagElsevier


Abstract
The combination of in-flight separation with a gas-filled stopping cell has opened a new field for experiments with exotic nuclei. For instance, at the SHIP/SHIPTRAP facility at GSI in Darmstadt high-precision mass measurements of rare nuclei have been successfully performed. In order to extend the reach of SHIPTRAP to exotic nuclei that are produced together with high rates of unwanted reaction products, a novel compact radio frequency quadrupole (RFQ) system has been developed. It implements ion cooling, identification and separation according to mass numbers and bunching capabilities. The system has a total length of one meter only and consists of an RFQ cooler, an RFQ mass filter and an RFQ buncher. A mass resolving power (FWHM) of 240 at a transmission efficiency of 90% has been achieved. The suppression of contaminants from neighboring masses by more than four orders of magnitude has been demonstrated at rates exceeding 10(6) ions/s. A longitudinal emittance of 0.45 eV mu s has been achieved with the RFQ buncher, which will enable improved time-of-flight mass spectrometry downstream of the device. With this triple RFQ system the measurement of e.g. N = Z nuclides in the region up to tin will become possible at SHIPTRAP. The technology is also well suited for other rare-isotope facilities with experimental setups behind a stopping cell, such as the fragment separator FRS with the FRS Ion Catcher at GSI. (c) 2017 Elsevier B.V. All rights reserved.



Zitierstile

Harvard-ZitierstilHaettner, E., Plass, W., Czok, U., Dickel, T., Geissel, H., Kinsel, W., et al. (2018) A versatile triple radiofrequency quadrupole system for cooling, mass separation and bunching of exotic nuclei, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 880, pp. 138-151. https://doi.org/10.1016/j.nima.2017.10.003

APA-ZitierstilHaettner, E., Plass, W., Czok, U., Dickel, T., Geissel, H., Kinsel, W., Petrick, M., Schaefer, T., & Scheidenberger, C. (2018). A versatile triple radiofrequency quadrupole system for cooling, mass separation and bunching of exotic nuclei. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 880, 138-151. https://doi.org/10.1016/j.nima.2017.10.003



Schlagwörter


Beam purificationFILTERFRSION-CATCHERIon coolingISOBAR-SEPARATIONPROJECTILERADIOACTIVITYRadiofrequency quadrupoleRFQ buncherRFQ mass filterSPECTROMETER

Zuletzt aktualisiert 2025-02-04 um 01:25